Analog signal processing

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Hauptverfasser: Pallás-Areny, Ramón (VerfasserIn), Webster, John G. (VerfasserIn)
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Sprache:English
Veröffentlicht: New York [u.a.] Wiley 1999
Schriftenreihe:A Wiley-Interscience publication
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Datensatz im Suchindex

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adam_text ANALOG SIGNAL PROCESSING RAMON PALLAS-ARENY UNIVERSITAT POLITECNICA DE CATALUNYA JOHN G. WEBSTER UNIVERSITY OF WISCONSIN-MADISON A WILEY-INTERSCIENCE PUBLICATION JOHN WILEY & SONS, INC NEW YORK * CHICHESTER * WEINHEIM * BRISBANE * SINGAPORE * TORONTO CONTENTS PREFACE XIII 1 SIGNALS AND SIGNAL PROCESSING 1 1.1 SIGNALS, INFORMATION, INTERFERENCE, AND NOISE, 1 1.2 SIGNAL CLASSIFICATION, 2 1.2.1 ANALOG AND DIGITAL SIGNALS, 2 1.2.2 SINGLE-ENDED, DIFFERENTIAL, AND FLOATING SIGNALS, 4 1.2.3 LOW-IMPEDANCE AND HIGH-IMPEDANCE SIGNALS, 12 1.3 DYNAMIC RANGE AND SIGNAL-TO-NOISE RATIO, 14 1.4 FUNCTIONS IN ANALOG SIGNAL PROCESSING, 16 1.4.1 LINEAR AND NONLINEAR FUNCTIONS, 16 1.4.2 AMPLITUDE AND LEVEL MATCHING, 19 1.4.3 IMPEDANCE ADAPTATION. BUFFERING, 20 1.4.4 DOMAIN CONVERSIONS, 23 1.4.5 FILTERING, 25 1.4.6 LINEARIZATION, 26 1.4.7 INTERFERENCE COMPENSATION, 26 1.4.8 LEVEL COMPARISON AND THRESHOLD DETECTION, 26 1.4.9 TERMINAL MATCHING, 27 1.5 ERRORS IN ANALOG SIGNAL PROCESSING, 29 1.5.1 ERRORS AND THEIR CLASSIFICATION, 29 1.5.2 SYSTEMATIC ERRORS, 32 1.5.3 RANDOM ERRORS, 32 1.5.4 STATIC ERRORS, 33 1.5.5 DYNAMIC ERRORS, 33 1.6 PROBLEMS, 39 REFERENCES, 40 2 VOLTAGE AMPLIFICATION 42 2.1 IDEAL VOLTAGE AMPLIFIERS, 42 2.2 PRACTICAL VOLTAGE AMPLIFIERS, 45 2.2.1 FIGURES OF MERIT OF FULLY DIFFERENTIAL AMPLIFIERS, 45 2.2.2 EFFECTS OF FINITE INPUT IMPEDANCES, 47 2.2.3 ERROR MODELING FOR VOLTAGE AMPLIFIERS, 53 2.2.4 DIFFERENTIAL VERSUS SINGLE-ENDED AMPLIFIERS, 57 FI CONTENTS 2.3 BUILDING BLOCKS FOR VOLTAGE AMPLIFIERS, 57 2.3.1 VOLTAGE-FEEDBACK OPERATIONAL AMPLIFIERS, 57 2.3.2 CURRENT-FEEDBACK OPERATIONAL AMPLIFIERS, 65 2.3.3 DIFFERENCE AMPLIFIERS, 68 2.3.4 INSTRUMENTATION AMPLIFIERS, 69 2.3.5 SWITCHED CAPACITORS, 72 2.3.6 VOLTAGE BUFFERS, 73 2.4 DC AMPLIFIERS, 74 2.4.1 SINGLE-ENDED DC AMPLIFIERS, 74 2.4.2 DIFFERENTIAL-INPUT DC AMPLIFIERS, 87 2.4.3 FULLY DIFFERENTIAL DC AMPLIFIERS, 93 2.5 AC AMPLIFIERS, 97 2.5.1 SINGLE-ENDED AC AMPLIFIERS, 100 2.5.2 DIFFERENTIAL-INPUT AC AMPLIFIERS, 104 2.5.3 FULLY DIFFERENTIAL AC AMPLIFIERS, 107 2.6 COMPOSITE AMPLIFIERS, 109 2.6.1 CASCADED AMPLIFIERS, 109 2.6.2 FEEDBACK COMPOSITE AMPLIFIERS, 111 2.6.3 PARALLELED AMPLIFIERS, 113 2.7 PROGRAMMABLE-GAIN AMPLIFIERS, 113 2.8 PROBLEMS, 117 REFERENCES, 121 3 CURRENT-TO-VOLTAGE AND VOLTAGE-TO-CURRENT CONVERSION 122 3.1 IDEAL CURRENT-TO-VOLTGAGE CONVERTERS, 122 3.2 PRACTICAL CURRENT-TO-VOLTAGE CONVERTERS, 124 3.2.1 FIGURES OF MERIT OF FULLY DIFFERENTIAL CURRENT- TO-VOLTAGE CONVERTERS, 124 3.2.2 ERROR MODELING FOR CURRENT-TO-VOLTAGE CONVERTERS, 126 3.3 BUILDING BLOCKS FOR CURRENT-TO-VOLTAGE CONVERTERS, 128 3.3.1 CURRENT INTEGRATORS, 128 3.3.2 INTEGRATED TRANSIMPEDANCE AMPLIFIERS, 130 3.4 CURRENT-TO-VOLTAGE CONVERTER AMPLIFIERS, 130 3.4.1 TRANSIMPEDANCE AMPLIFIERS, 130 3.4.2 CHARGE AMPLIFIERS, 142 3.5 IDEAL VOLTAGE-TO-CURRENT CONVERTERS, 148 3.6 PRACTICAL VOLTAGE-TO-CURRENT CONVERTERS, 150 3.6.1 FIGURES OF MERIT OF FULLY DIFFERENTIAL VOLTAGE-TO-CURRENT CONVERTERS, 150 3.6.2 ERROR MODELING FOR VOLTAGE-TO-CURRENT CONVERTERS, 150 3.7 OPERATIONAL TRANSCONDUCTANCE AMPLIFIERS, 152 CONTENTS VII 3.8 VOLTAGE-TO-CURRENT CONVERTER CIRCUITS, 154 3.8.1 DC CURRENT SOURCES AND SINKS, 154 3.8.2 TRANSCONDUCTANCE AMPLIFIERS, 159 3.8.3 VOLTAGE-TO-(4 MA TO 20MA) CONVERTERS, 165 3.9 OTHER COMPONENTS AND CIRCUITS FOR PROCESSING CURRENTS, 167 3.9.1 CURRENT MIRRORS, 167 3.9.2 CURRENT AMPLIFIERS, 168 3.9.3 CURRENT CONVEYORS, 172 3.9.4 BIDIRECTIONAL CURRENT SOURCES, 173 3.10 PROBLEMS, 174 REFERENCES, 179 4 LINEAR ANALOG FUNCTIONS 181 4.1 ADDITION, 181 4.1.1 SINGLE-ENDED VOLTAGE ADDITION, 181 4.1.2 DIFFERENTIAL VOLTAGE ADDITION, 187 4.1.3 LEVEL SHIFTING, 190 4.2 SUBTRACTION, 193 4.2.1 SINGLE-ENDED VOLTAGE SUBTRACTION, 193 4.2.2 DIFFERENTIAL VOLTAGE SUBTRACTION, 194 4.3 DIFFERENTIATION, 195 4.3.1 SINGLE-ENDED DIFFERENTIATOR, 196 4.3.2 DIFFERENCE DIFFERENTIATOR, 201 4.4 INTEGRATION, 203 4.4.1 SINGLE-ENDED INTEGRATOR, 203 4.4.2 DIFFERENCE INTEGRATOR, 210 4.5 IMPEDANCE TRANSFORMATION AND CONVERSION, 214 4.5.1 NEGATIVE IMPEDANCE CONVERSION, 214 4.5.2 IMPEDANCE GYRATION, 219 4.5.3 CAPACITANCE MULTIPLICATION, 222 4.6 PROBLEMS, 225 REFERENCES, 228 5 AC/DC SIGNAL CONVERSION 229 5.1 DESCRIPTION OF AC SIGNALS, 229 5.2 SIGNAL RECTIFICATION, 231 5.2.1 HALF-WAVE RECTIFICATION, 231 5.2.2 FULL-WAVE RECTIFICATION: ABSOLUTE-VALUE CIRCUITS, 234 5.3 PEAK AND VALLEY DETECTION, 245 5.3.1 PEAK DETECTION, 245 NII CONTENTS 5.3.2 VALLEY DETECTION, 248 5.4 RMS-TO-DC CONVERSION, 249 5.4.1 THERMAL RMS-TO-DC CONVERSION, 249 5.4.2 DIRECT COMPUTATION RMS-TO-DC CONVERSION, 251 5.4.3 IMPLICIT COMPUTATION RMS-TO-DC CONVERSION, 253 5.5 AMPLITUDE DEMODULATION, 255 5.5.1 ENVELOPE DETECTION, 257 5.5.2 COHERENT DEMODULATION, 259 5.6 PROBLEMS, 270 REFERENCES, 273 6 OTHER NONLINEAR ANALOG FUNCTIONS 274 6.1 VOLTAGE COMPARISON, 274 6.1.1 VOLTAGE COMPARATORS, 274 6.1.2 SCHMITT TRIGGERS, 285 6.1.3 WINDOW COMPARATORS, 287 6.2 VOLTAGE LIMITING (CLIPPING), 288 6.3 LOGARITHMIC AMPLIFIERS, 293 6.3.1 TRANSDIODE LOGARITHMIC AMPLIFIERS, 296 6.3.2 LOG RATIO AMPLIFIERS, 301 6.4 EXPONENTIAL (ANTILOG) AMPLIFIERS, 302 6.5 ANALOG MULTIPLIERS, 304 6.5.1 MULTIPLIER ERROR SPECIFICATIONS, 304 6.5.2 TRANSCONDUCTANCE MULTIPLIERS, 304 6.5.3 LOG-ANTILOG MULTIPLIER, 311 6.5.4 ADDITIONAL MULTIPLIER CIRCUITS, 312 6.6 ANALOG DIVIDERS, 315 6.6.1 ANALOG DIVISION BY FEEDBACK, 315 6.6.2 LOG-ANTILOG DIVIDERS, 317 6.7 PROBLEMS, 318 REFERENCES, 321 7 ANALOG SIGNAL FILTERING 322 7.1 INTRODUCTION TO FILTERING AND FILTER DESIGN, 322 7.1.1 FILTER SPECIFICATION, 322 7.1.2 FREQUENCY RESPONSE, 326 7.1.3 TRANSFORMATION RULES, 330 7.1.4 NORMALIZATION AND SCALING LAWS, 331 7.1.5 TRANSIENT RESPONSE, 331 7.1.6 DIFFERENTIAL FILTERS, 333 7.1.7 FILTER SENSITIVITY, 338 CONTENTS IX 7.2 COMPONENTS FOR FILTER IMPLEMENTATION, 338 7.2.1 PASSIVE COMPONENTS, 339 7.2.2 OPERATIONAL AMPLIFIERS, 342 7.2.3 SWITCHED CAPACITORS, 343 7.3 LOW-PASS FILTERS, 345 7.3.1 RC LOW-PASS FILTERS, 345 7.3.2 LC LOW-PASS FILTERS, 347 7.3.3 ACTIVE LOW-PASS FILTERS, 348 7.4 HIGH-PASS FILTERS, 352 7.4.1 RC HIGH-PASS FILTERS, 352 7.4.2 LC HIGH-PASS FILTERS, 352 7.4.3 ACTIVE HIGH-PASS FILTERS, 354 7.5 BANDPASS FILTERS, 357 7.5.1 PASSIVE BANDPASS FILTERS, 357 7.5.2 ACTIVE BANDPASS FILTERS, 359 7.6 BAND-REJECT (NOTCH) FILTERS, 361 7.6.1 PASSIVE BAND-REJECT FILTERS, 361 7.6.2 ACTIVE BAND-REJECT FILTERS, 362 7.7 ALL-PASS FILTERS, 365 7.8 NONLINEAR ANALOG FILTERS, 369 7.9 INPUT FILTERS AND CIRCUIT PROTECTION, 372 7.9.1 SINGLE-ENDED INPUTS, 372 7.9.2 DIFFERENTIAL INPUTS, 374 7.10 PROBLEMS, 376 REFERENCES, 377 8 ANALOG SIGNAL SWITCHING, MULTIPLEXING, AND SAMPLING 379 8.1 INTRODUCTION TO SIGNAL ACQUISITION, 379 8.2 ANALOG SWITCHES, 382 8.2.1 THE IDEAL ANALOG SWITCH, 382 8.2.2 PRACTICAL ANALOG SWITCHES, 383 8.2.3 DC MODEL AND ERRORS FOR ANALOG SWITCHES, 385 8.2.4 AC MODEL AND ERRORS FOR ANALOG SWITCHES, 389 8.2.5 SWITCHING AND CONTROL MODELS FOR ANALOG SWITCHES, 393 8.3 ANALOG MULTIPLEXERS, 393 8.3.1 BASIC STRUCTURE AND MODELS, 393 8.3.2 DC MODEL AND ERRORS FOR ANALOG MULTIPLEXERS, 396 8.3.3 AC MODEL AND ERRORS FOR ANALOG MULTIPLEXERS, 400 8.3.4 SWITCHING AND CONTROL MODELS FOR ANALOG MULTIPLEXERS, 405 8.3.5 INPUT CHANNEL EXTENSION, 406 8.4 CROSSPOINT SWITCH ARRAYS, 411 X CONTENTS 8.5 SAMPLE-AND-HOLD AMPLIFIERS, 412 8.5.1 THE NEED FOR SAMPLE-AND-HOLD AMPLIFIERS, 412 8.5.2 THE BASIC SAMPLE-AND-HOLD CIRCUIT, 414 8.5.3 ERRORS IN SAMPLE-AND-HOLD AMPLIFIERS, 415 8.6 PROBLEMS, 422 REFERENCES, 424 9 ERROR ANALYSIS AND REDUCTION 425 9.1 ERROR SOURCES IN ANALOG SIGNAL PROCESSING, 425 9.1.1 SOURCES OF SYSTEMATIC ERRORS, 426 9.1.2 SOURCES OF RANDOM ERRORS, 431 9.2 ERROR BUDGET AND CALCULATION, 432 9.3 ERROR REDUCTION BY INTERNAL CALIBRATION, 439 9.3.1 SINGLE-POINT CALIBRATION, 439 9.3.2 TWO-POINT CALIBRATION, 441 9.3.3 THREE-POINT CALIBRATION, 444 9.3.4 /7-POINT CALIBRATION, 448 9.4 OFFSET REDUCTION TECHNIQUES, 450 9.4.1 AUTOZERO TECHNIQUES, 451 9.4.2 THE RECIRCULATION METHOD, 452 9.5 GAIN-ERROR REDUCTION TECHNIQUES, 453 9.6 PROBLEMS, 455 REFERENCES, 456 10 INTERFERENCE AND ITS REDUCTION 457 10.1 INTERFERENCE COUPLING IN ELECTRONIC CIRCUITS, 457 10.1.1 CONDUCTIVE COUPLING, 458 10.1.2 CAPACITIVE COUPLING, 463 10.1.3 INDUCTIVE COUPLING, 472 10.2 GROUNDING FOR INTERFERENCE REDUCTION, 476 10.2.1 SAFETY GROUND, 476 10.2.2 SIGNAL GROUNDING, 477 10.2.3 PARTITION GROUNDING, 479 10.3 SHIELDING OF CONDUCTORS AND CIRCUITS, 480 10.3.1 THE ELECTRIC SHIELD CONCEPT, 481 10.3.2 CIRCUIT GUARDS, 482 10.3.3 ELECTRIC SHIELD GROUNDING, 484 10.3.4 MAGNETIC SHIELDING, 489 10.4 SIGNAL ISOLATION. ISOLATION AMPLIFIERS, 493 CONTENTS XI 10.5 PROBLEMS, 496 REFERENCES, 497 11 NOISE, DRIFT, AND THEIR REDUCTION 499 11.1 NOISE FUNDAMENTALS, 499 11.1.1 NOISE DESCRIPTION, 499 11.1.2 THERMAL NOISE, 503 11.1.3 SHOT NOISE, 505 11.1.4 LOW-FREQUENCY NOISE, 507 11.1.5 NOISE BANDWIDTH, 509 11.1.6 NOISE CALCULATIONS, 513 11.2 NOISE IN ELECTRONIC COMPONENTS AND CIRCUITS, 519 11.2.1 EQUIVALENT INPUT NOISE, 520 11.2.2 OPTIMAL SOURCE RESISTANCE AND NOISE MATCHING, 525 11.2.3 NOISE IN OPERATIONAL AMPLIFIERS, 527 11.2.4 NOISE IN INSTRUMENTATION AMPLIFIERS, 544 11.2.5 NOISE IN RESISTORS, 546 11.2.6 NOISE IN TRANSIMPEDANCE AMPLIFIERS, 549 11.2.7 NOISE IN CHARGE AMPLIFIERS, 551 11.2.8 NOISE IN DIFFERENTIATORS, 554 11.2.9 NOISE IN INTEGRATORS, 556 11.3 DRIFT IN ELECTRONIC COMPONENTS, 558 11.4 ENVIRONMENTAL NOISE (PSEUDONOISE), 559 11.4.1 THERMAL PSEUDONOISE, 560 11.4.2 CHEMICAL PSEUDONOISE, 562 11.4.3 MECHANICAL PSEUDONOISE, 562 11.5 PROBLEMS, 563 REFERENCES, 564 APPENDIX A: WEB SITES OF INTEREST IN ANALOG SIGNAL PROCESSING 566 APPENDIX B: STANDARD EIA RESISTOR AND CAPACITOR VALUES 570 INDEX 573
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spelling Pallás-Areny, Ramón Verfasser aut
Analog signal processing Ramón Pallás-Areny ; John G. Webster
New York [u.a.] Wiley 1999
XV, 586 S. graph. Darst.
txt rdacontent
n rdamedia
nc rdacarrier
A Wiley-Interscience publication
Linear integrated circuits
Signal processing
Signalverarbeitung (DE-588)4054947-1 gnd rswk-swf
Analoge integrierte Schaltung (DE-588)4112519-8 gnd rswk-swf
Analoge integrierte Schaltung (DE-588)4112519-8 s
Signalverarbeitung (DE-588)4054947-1 s
DE-604
Webster, John G. Verfasser aut
HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008477468&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Pallás-Areny, Ramón
Webster, John G.
Analog signal processing
Linear integrated circuits
Signal processing
Signalverarbeitung (DE-588)4054947-1 gnd
Analoge integrierte Schaltung (DE-588)4112519-8 gnd
subject_GND (DE-588)4054947-1
(DE-588)4112519-8
title Analog signal processing
title_auth Analog signal processing
title_exact_search Analog signal processing
title_full Analog signal processing Ramón Pallás-Areny ; John G. Webster
title_fullStr Analog signal processing Ramón Pallás-Areny ; John G. Webster
title_full_unstemmed Analog signal processing Ramón Pallás-Areny ; John G. Webster
title_short Analog signal processing
title_sort analog signal processing
topic Linear integrated circuits
Signal processing
Signalverarbeitung (DE-588)4054947-1 gnd
Analoge integrierte Schaltung (DE-588)4112519-8 gnd
topic_facet Linear integrated circuits
Signal processing
Signalverarbeitung
Analoge integrierte Schaltung
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